Janssen Dennis, Mann Kenneth A, Verdonschot Nico
Orthopaedic Research Laboratory, Radboud University Nijmegen Medical Centre, Nijmegen, The Netherlands.
J Orthop Res. 2009 Oct;27(10):1312-8. doi: 10.1002/jor.20882.
Recently, experiments were performed to determine the micromechanical behavior of the cement-bone interface under tension-compression loading conditions. These experiments were simulated using finite element analysis (FEA) to test whether the micromechanical response of the interface could be captured in micromodels. Models were created of experimental specimens based upon microcomputed tomography data, including the complex interdigitated bone-cement morphology and simulated frictional contact at the interface. The models were subjected to a fully reversed tension-compression load, mimicking the experimental protocol. Similar to what was found experimentally, the simulated interface was stiffer in compression than in tension, and the majority of displacement was localized to the cement-bone interface. A weak correlation was found between the FEA-predicted stiffness and the stiffness found experimentally, with average errors of 8 and 30% in tension and compression, respectively. The hysteresis behavior found experimentally was partially reproduced in the simulation by including friction at the cement-bone interface. Furthermore, stress analysis suggested that cement was more at risk of fatigue failure than bone, concurring with the experimental observation that more cracks were formed in the cement than in the bone. The current study provides information that may help explain the load transfer mechanisms taking place at the cement-bone interface.
最近,开展了一些实验来确定在拉压加载条件下骨水泥-骨界面的微观力学行为。使用有限元分析(FEA)对这些实验进行了模拟,以测试界面的微观力学响应能否在微观模型中得以体现。基于微计算机断层扫描数据创建了实验样本的模型,其中包括复杂的相互交错的骨水泥形态,并模拟了界面处的摩擦接触。对模型施加完全反向的拉压载荷,模拟实验方案。与实验结果类似,模拟界面在压缩时比拉伸时更硬,且大部分位移集中在骨水泥-骨界面。有限元分析预测的刚度与实验测得的刚度之间存在较弱的相关性,在拉伸和压缩时的平均误差分别为8%和30%。通过在骨水泥-骨界面纳入摩擦力,模拟部分再现了实验中发现的滞后行为。此外,应力分析表明,骨水泥比骨更易发生疲劳失效,这与实验观察结果一致,即在骨水泥中形成的裂纹比在骨中更多。当前的研究提供了有助于解释骨水泥-骨界面处载荷传递机制的信息。